Mission-Critical Silicon

Silicon engineered for extreme environments

From radiation-hardened defense systems to ISO 26262 automotive ADAS, we design down to the nanometer, ensuring absolute compliance and zero-failure operation.

Extreme macro photography of a radiation-hardened integrated circuit, high-contrast cleanroom lighting, deep obsidian and neon cyan tones, ultra-sharp details
Extreme macro photography of a radiation-hardened integrated circuit, high-contrast cleanroom lighting, deep obsidian and neon cyan tones, ultra-sharp details
Aerospace & Defense

Radiation-hardened architectures

For orbital and tactical deployments, we engineer secure hardware architectures that withstand severe electromagnetic and thermal stress.

Our design methodologies address single-event effects and total ionizing dose mitigation. We integrate hardware-level cryptographic cores and physically unclonable functions to secure critical data paths against physical tampering.

Zero-failure execution in high-stress orbital paths.

Lead Architect, Aerospace Systems

ISO 26262 Compliance

Automotive ASIL-D compliance

We deliver fully verified mixed-signal layouts and RTL design for advanced driver-assistance systems and autonomous drive controllers, backed by complete safety documentation.

Macro shot of copper PCB traces and ultra-small MEMS sensor die, dramatic high-contrast studio lighting, copper and neon cyan highlights
Macro shot of copper PCB traces and ultra-small MEMS sensor die, dramatic high-contrast studio lighting, copper and neon cyan highlights
Ultra-Low-Power IoT

Mixed-signal silicon precision

By integrating ultra-low-power analog sensors directly with digital logic on a single die, we reduce external component count and overall package footprint, accelerating your timeline to high-yield fabrication.

We optimize consumer IoT silicon for extreme battery longevity without compromising processing capability. Our sub-micron layouts minimize parasitic leakage and maximize power-added efficiency in RF front-ends.